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Faroogh Garoosi
Faroogh Garoosi
Department of Chemical & Petroleum Engineering, University of Calgary, Calgary, Alberta
Verified email at ucalgary.ca
Title
Cited by
Cited by
Year
Numerical simulation of natural convection of the nanofluid in heat exchangers using a Buongiorno model
F Garoosi, L Jahanshaloo, MM Rashidi, A Badakhsh, ME Ali
Applied Mathematics and Computation 254, 183-203, 2015
1872015
Two-phase mixture modeling of mixed convection of nanofluids in a square cavity with internal and external heating
F Garoosi, B Rohani, MM Rashidi
Powder Technology 275, 304-321, 2015
1602015
Investigation of micro-and nanosized particle erosion in a 90 pipe bend using a two-phase discrete phase model
MR Safaei, O Mahian, F Garoosi, K Hooman, A Karimipour, SN Kazi, ...
The scientific world journal 2014, 2014
1432014
Two phase simulation of natural convection and mixed convection of the nanofluid in a square cavity
F Garoosi, G Bagheri, MM Rashidi
Powder Technology 275, 239-256, 2015
1402015
Numerical simulation of natural convection of nanofluids in a square cavity with several pairs of heaters and coolers (HACs) inside
F Garoosi, G Bagheri, F Talebi
International Journal of Heat and Mass Transfer 67, 362-376, 2013
1352013
Numerical simulation of natural convection and mixed convection of the nanofluid in a square cavity using Buongiorno model
F Garoosi, S Garoosi, K Hooman
Powder technology 268, 279-292, 2014
1312014
Numerical study of heat transfer performance of nanofluids in a heat exchanger
F Garoosi, F Hoseininejad, MM Rashidi
Applied Thermal Engineering 105, 436-455, 2016
1022016
Numerical study of natural convection heat transfer in a heat exchanger filled with nanofluids
F Garoosi, F Hoseininejad, MM Rashidi
Energy 109, 664-678, 2016
892016
Numerical study of natural and mixed convection heat transfer between differentially heated cylinders in an adiabatic enclosure filled with nanofluid
F Garoosi, F Hoseininejad
Journal of Molecular Liquids 215, 1-17, 2016
812016
Numerical simulation of mixed convection of the nanofluid in heat exchangers using a Buongiorno model
F Garoosi, L Jahanshaloo, S Garoosi
Powder technology 269, 296-311, 2015
632015
Presenting two new empirical models for calculating the effective dynamic viscosity and thermal conductivity of nanofluids
F Garoosi
Powder technology 366, 788-820, 2020
602020
Two phase flow simulation of conjugate natural convection of the nanofluid in a partitioned heat exchanger containing several conducting obstacles
F Garoosi, MM Rashidi
International Journal of Mechanical Sciences 130, 282-306, 2017
432017
Numerical analysis of conjugate natural and mixed convection heat transfer of nanofluids in a square cavity using the two-phase method
F Garoosi, F Talebi
Advanced Powder Technology 28 (7), 1668-1695, 2017
432017
Eulerian–Lagrangian analysis of solid particle distribution in an internally heated and cooled air-filled cavity
F Garoosi, MR Safaei, M Dahari, K Hooman
Applied Mathematics and Computation 250, 28-46, 2015
382015
Conjugate-mixed convection heat transfer in a two-sided lid-driven cavity filled with nanofluid using Manninen's two phase model
F Garoosi, MM Rashidi
International Journal of Mechanical Sciences 131, 1026-1048, 2017
352017
Numerical simulation of multiphase flows using an enhanced Volume-of-Fluid (VOF) method
F Garoosi, K Hooman
International Journal of Mechanical Sciences 215, 106956, 2022
342022
Numerical simulation of entropy generation due to natural convection heat transfer using Kernel Derivative-Free (KDF) Incompressible Smoothed Particle Hydrodynamics (ISPH) model
F Garoosi, A Shakibaeinia
International Journal of Heat and Mass Transfer 150, 119377, 2020
322020
Experimental and numerical investigations of dam break flow over dry and wet beds
F Garoosi, AN Mellado-Cusicahua, M Shademani, A Shakibaeinia
International Journal of Mechanical Sciences 215, 106946, 2022
302022
An improved high-order ISPH method for simulation of free-surface flows and convection heat transfer
F Garoosi, A Shakibaeinia
Powder technology 376, 668-696, 2020
272020
Eulerian–Lagrangian modeling of solid particle behavior in a square cavity with several pairs of heaters and coolers inside
F Garoosi, A Shakibaeinia, G Bagheri
Powder technology 280, 239-255, 2015
262015
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